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Published on: October 27, 2023
Dual Blockade of TNF and IL-17A Inhibits Inflammation and Structural Damage in a Rat Model of Spondyloarthritis
Ihsan Hammoura1,2, Renee H Fiechter1,2, Shaughn H Bryant3
1Amsterdam Rheumatology and Immunology Center, Department of Clinical Immunology and Rheumatology, Amsterdam University Medical Centers, University of Amsterdam, 1105 AZ Amsterdam, The Netherlands.
Abstract:
The tumor necrosis factor (TNF) and IL-23/IL-17 axes are the main therapeutic targets in spondyloarthritis. Despite the clinical efficacy of blocking either pathway, monotherapy does not induce remission in all patients and its effect on new bone formation remains unclear. We aimed to study the effect of TNF and IL-17A dual inhibition on clinical disease and structural damage using the HLA-B27/human β2-microglobulin transgenic rat model of SpA. Immunized rats were randomized according to arthritis severity, 1 week after arthritis incidence reached 50%, to be treated twice weekly for a period of 5 weeks with either a dual blockade therapy of an anti-TNF antibody and an anti-IL-17A antibody, a single therapy of either antibody, or PBS as vehicle control. Treatment-blinded observers assessed inflammation and structural damage clinically, histologically and by micro-CT imaging. Both single therapies as well as TNF and IL-17A dual blockade therapy reduced clinical spondylitis and peripheral arthritis effectively and similarly. Clinical improvement was confirmed for all treatments by a reduction of histological inflammation and pannus formation (p < 0.05) at the caudal spine. All treatments showed an improvement of structural changes at the axial and peripheral joints on micro-CT imaging, with a significant decrease for roughness (p < 0.05), which reflects both erosion and new bone formation, at the level of the caudal spine. The effect of dual blockade therapy on new bone formation was more prominent at the axial than the peripheral level. Collectively, our study showed that dual blockade therapy significantly reduces inflammation and structural changes, including new bone formation. However, we could not confirm a more pronounced effect of dual inhibition compared to single inhibition.
Insights
Dual inhibition of tumor necrosis factor (TNF) and IL-17A effectively reduced inflammation and structural damage in a rat model of spondyloarthritis (SpA), including new bone formation, though not superior to monotherapy.
Area of Science:
- Immunology
- Rheumatology
- Pharmacology
Background:
- Tumor necrosis factor (TNF) and IL-23/IL-17 pathways are key targets in spondyloarthritis (SpA).
- Monotherapy with TNF or IL-17 inhibitors shows clinical efficacy but doesn't induce remission in all patients.
- The impact of these therapies on new bone formation in SpA is not fully understood.
Purpose of the Study:
- To investigate the efficacy of dual TNF and IL-17A inhibition on clinical disease and structural damage in a rat model of SpA.
- To compare the effects of dual blockade with single blockade therapies on inflammation and new bone formation.
Main Methods:
- Utilized the HLA-B27/human β2-microglobulin transgenic rat model of SpA.
- Administered dual anti-TNF/anti-IL-17A antibody therapy, single antibody therapies, or vehicle control twice weekly for 5 weeks.
- Assessed clinical, histological, and micro-CT imaging parameters for inflammation and structural damage.
Main Results:
- All treatment groups, including dual blockade and single therapies, effectively reduced clinical and histological inflammation in the caudal spine.
- Micro-CT imaging revealed structural improvements in both axial and peripheral joints across all treatment groups.
- Dual blockade showed a more pronounced effect on new bone formation at the axial level compared to peripheral joints, but overall superiority to monotherapy was not confirmed.
Conclusions:
- Dual TNF and IL-17A blockade significantly reduces inflammation and structural damage, including new bone formation, in a rat model of SpA.
- While effective, dual inhibition did not demonstrate a significantly greater effect on new bone formation compared to monotherapy in this model.
- Further research is needed to fully elucidate the role and potential benefits of combination therapies in managing SpA progression.
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